Biocomposite Films of Amylose Reinforced with Polylactic Acid by Solvent Casting Method Using a Pickering Emulsion Approach

Author:

Faisal Marwa1ORCID,Kirkensgaard Jacob Judas Kain23ORCID,Jørgensen Bodil1ORCID,Ulvskov Peter1ORCID,Rée Max1,Kang Sue1,Andersson Nikolai1,Jørgensen Mikkel1,Simonsen Jonas1,Hebelstrup Kim H.45,Blennow Andreas1ORCID

Affiliation:

1. Department of Plant and Environmental Sciences, Faculty of Science, University of Copenhagen, 1871 Frederiksberg C, Denmark

2. Department of Food Science, Faculty of Science, University of Copenhagen, 1958 Frederiksberg C, Denmark

3. Niels Bohr Institute, Faculty of Science, Universitetsparken 5, 2100 København Ø, Denmark

4. Department of Agroecology, Aarhus University, 4200 Slagelse, Denmark

5. PlantCarb ApS, 2970 Hørsholm, Denmark

Abstract

Binary and ternary blends of amylose (AM), polylactic acid (PLA), and glycerol were prepared using a Pickering emulsion approach. Various formulations of AM/PLA with low PLA contents ranging from 3% to 12% were mixed with AM matrix and reinforced with 25% cellulose nanofibers (CNF), and PLA-grafted cellulose nanofibers (g-CNF), the latter to enhance miscibility. Polymeric films were fabricated through solvent casting and characterized using Scanning Electron Microscopy (SEM), Fourier Transform Infrared Spectroscopy (FTIR), and Wide-Angle X-ray Scattering (WAXS), and the evaluations of physical, mechanical properties, and wettability were performed using contact angle measurements. The binary blends of AM and PLA produced films suitable for packaging, pharmaceutical, or biomedical applications with excellent water barrier properties. The ternary blends of AM/CNF/PLA and AM/g-CNF/PLA nanocomposite films demonstrated enhanced tensile strength and reduced water permeability compared to AM/PLA films. Adding g-CNF resulted in better homogeneity and increased relative crystallinity from 33% to 35% compared to unmodified CNF. The application of Pickering emulsion in creating AM-based CNF/ PLA composites resulted in a notable enhancement in tensile strength by 47%. This study presents an effective approach for producing biodegradable and reinforced PLA-based nanocomposite films, which show promise as bio-nanocomposite materials for food packaging applications.

Funder

Danish council for independent research

Innomission 4 Program of Innovation Fund Denmark

FOODHAY

Publisher

MDPI AG

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